US599698A - Island - Google Patents

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US599698A
US599698A US599698DA US599698A US 599698 A US599698 A US 599698A US 599698D A US599698D A US 599698DA US 599698 A US599698 A US 599698A
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clutch
cam
shaft
pinion
pinions
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q3/00Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system
    • H01Q3/02Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system using mechanical movement of antenna or antenna system as a whole
    • H01Q3/08Arrangements for changing or varying the orientation or the shape of the directional pattern of the waves radiated from an antenna or antenna system using mechanical movement of antenna or antenna system as a whole for varying two co-ordinates of the orientation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H35/00Gearings or mechanisms with other special functional features
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T74/00Machine element or mechanism
    • Y10T74/22Miscellaneous

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  • the object of my invention is to produce intermittently a rotary and an oscillating or reciprocating movement from a driving-wheel which constantly rotates in one direction, the change from rotary to reciprocating movement, and vice versa, to be effected automatically; and a further object of the invention is to provide for the disengagement of a shifting clutch from one of two pinions or spurgears and its engagement with the other of said spur-gears while both of said gears are -in motion, but at different rates of speed.
  • Figure 1 is a top or plan view of the mechanism to be described.
  • Fig. 2 is an end elevation of the same.
  • Fig. 3 is a top view, upon an enlarged scale, of the clutch mechanism and the gears to be engaged thereby.
  • Fig. 4 is a central longitudinal section of Fig. 3, the clutch, however, being shown in a different position.
  • Fig. 5 is a transverse section on the line 00 0c of Fig. Sfand Fig. 6 is a detail showing a portion of a cam-chain.
  • A is a suitable frame for supporting the several parts.
  • the main driving-shaft a carrying the pinion a, which engages a gearwheel B, which said gear-wheel B serves as the driving-wheel of the connecting mechanism.
  • the gear-wheel B engages a pinion B, mounted loosely on the shaft I).
  • Said gearwheel B is also provided with a crank-pin c, which, by means of. the connecting-rod 0, serves to operate the rack-bar 0 the teeth of which rack-bar engage with the teeth of a pinion B also loose upon the shaft b- By the mechanism described,when the driving-wheel Serial No. 424,342. (No model.)
  • a shifting-clutch member 0 Connected to the shaft 6 by a groove-andspline connection 19 and arranged between the pinions B B is a shifting-clutch member 0, provided with the usual groove, to be en gaged by the fork of the clutch-lever D.
  • the movable clutch C is provided upon each side with a spring-pressed pin d, as clearly shown 'in Fig. 4, and each of the pinions B B is provided upon its inner face with a hole or recess d, adapted to be engaged by said spring-pressed pins (1.
  • the clutch-lever D is pivoted to the frame, as at d and at its outer end is provided with a fork d E represents an endless cam-chain arranged so as to be embraced by the fork d of the clutch-lever, as shown in Figs. 1 and 2, and provided with projecting cams e, as shown in Fig. 6.
  • This endless cam-chain E is supported upon suitable sprocket-wheels, one of which, F, is shown in the drawings, the other one, which is an idler, not being shown.
  • the sprocket-wheel'F is secured to a shaft f, upon which shaft is also secured the ratchet-wheel .G for giving movement to the sprocket-wheel F and thus feeding the cam-chain.
  • cam-groove g Upon the face of the driving-wheel B is a cam-groove g, as shown in Fig. 2.
  • Engaging with this camgroove 9 is a roller or stud projecting from the lever h, which said lever is pivoted to the frame at h, andto the opposite end of said I and that when said clutch is engaged with the pinion B said shaft 1) will be oscillated or reciprocated back and forth let it be assumed that said clutch is in engagement with the pinion B and the mechanism in operation IOG with the shaft 1) in rotation.
  • cam-chain E At each revolution of the gear-wheel or driving-wheel B the cam-chain E will, by means of the cam-groove g, the lever h, the pawl 7L2, and the ratchetwheel G and sprocket-wheel F, be fed along one link.
  • the driving-wheel B has revolved a sufficient number of times to bring the proper cam e on the cam-chain E to a position where said cam is about to engage the fork d on the lever D, the next feed of the cam-chain will cause said cam e to strike one arm of the fork of said lever, and as the cam is moved along it will serve to force or throw said lever D in a direction to disengage the clutch C from the pinion B and to engage the other pinion B
  • the parts are so arranged that the hole d in the pinion B will not be at the proper position to be engaged by the projecting pin (1 upon the movable clutch memher at the instant, but the spring behind said pin will yield as the end of said pin comes in contact with the face of the pinion B thereby enabling the movable clutch to be moved close up to the face of said pinion and thus become disengaged from the pinion B, the springpressed pin being forced into and housed within the body of the clutch.
  • the shaft 12 will then partake of the motion of the pinion B and be oscillated back and forth until another cam e on the opposite side of the cam-chain E is brought by the continuous feed of said cam-chain to a position where it will operate the clutch-lever D to move it in the opposite direction-21 e., in a direction to disengage the clutch C from the pinion B and to engage said clutch with the pinion B,which said pinion B will be engaged with the clutch O as soon as the hole d in the face of said pinion is brought to a position where it can be engaged by the appropriate spring-pressed pin d.
  • the shaft 1) will be continuously rotated under the action of the pinion B until a cam on the cam-chain operates to again shift the clutch 0.
  • Any desired number of cams e on the cam-chain may of course be employed, and by properly locating and arranging said cams the times for the shifting of the clutch may be varied and regulated as desired.
  • the mechanism above described may be used for various purposes and will be found particularly useful in connection with that class of knitting-machines which knit first around and around, as in knitting the leg and the foot of a stocking, and then backward and forward, as in knitting the heel and toe.
  • a knitting-machine of the class referred to four cams would be employed arranged alternately on opposite sides of the cam-chain.
  • the first cam would serve to shift the clutch from the pinion B to the pinion B at the conclusion of the leg of a stocking and preparatory to commencing the heel.
  • the next cam would throw the clutch back again at the conclusion of the heel and preparatory to commencing the foot.
  • the third cam would shift the clutch again at the end of the foot and preparatory to the commencement of the toe
  • the fourth cam would shift the clutch back once more at the end of the toe and preparatory to commencing the leg of the next stocking.
  • the means for automatically shifting the clutch and thus for changing the shaft 1) from rotary to reciprocating motion, and vice versa is entirely independent of said shaft, the shifting of the clutch being effected by a train of mechanism of which the shaft itself forms no part.
  • the shaft may be oscillated back and forth any desired number of times without any shifting of the clutch, whereas in devices in which the shaft itself forms a part of the means or mechanism for shifting the clutch it is evident that the clutch must of necessity be shifted first in one direction and then in the other at every oscillation of the shaft.
  • cam-chain directly engaging and serving to positively operate said lever in both directions, and means for feeding said cam-chain, substantially as described.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transmission Devices (AREA)

Description

(No Model.) Y 2 Sheets-Sheet 1. G. E. PRINK. MECHANICAL MOVEMENT.
No. 599,698. Patented Mar. 1, 1898.
Ewen for.
. UNITED STATES PATENT OFFICE.
GEORGE E. FRINK, OF PAWTUOKET, RHODE ISLAND, ASSIGNOR TO THE E. JEN CKES MANUFACTURING COMPANY, OF SAME PLACE.
M EC HANICAL M'OVEM ENT.
SPECIFICATION forming part of Letters Patent No. 599,698, dated March 1, '1898.
Application filed March 9 1 8 9 2- T aZZ whom it mayvconcern:
Be it known that I, GEORGE E. FRINK, of Pawtucket, in the county of Providence and State of Rhode Island, have invented certain new and useful Improvements in Mechanical Movements; and I do hereby declare the following specification, taken in connection with the accompanying drawings, forming a part of the same, to be a full, clear, and exact description thereof.
The object of my invention is to produce intermittently a rotary and an oscillating or reciprocating movement from a driving-wheel which constantly rotates in one direction, the change from rotary to reciprocating movement, and vice versa, to be effected automatically; and a further object of the invention is to provide for the disengagement of a shifting clutch from one of two pinions or spurgears and its engagement with the other of said spur-gears while both of said gears are -in motion, but at different rates of speed.
To that end my invention consists in certain combinations and arrangements of parts hereinafter described.
Referring to the drawings, Figure 1 is a top or plan view of the mechanism to be described. Fig. 2 is an end elevation of the same. Fig. 3 is a top view, upon an enlarged scale, of the clutch mechanism and the gears to be engaged thereby. Fig. 4 is a central longitudinal section of Fig. 3, the clutch, however, being shown in a different position. Fig. 5 is a transverse section on the line 00 0c of Fig. Sfand Fig. 6 is a detail showing a portion of a cam-chain.
A is a suitable frame for supporting the several parts. Mounted in a bracket secured to said frame is the main driving-shaft a, carrying the pinion a, which engages a gearwheel B, which said gear-wheel B serves as the driving-wheel of the connecting mechanism. The gear-wheel B engages a pinion B, mounted loosely on the shaft I). Said gearwheel B is also provided with a crank-pin c, which, by means of. the connecting-rod 0, serves to operate the rack-bar 0 the teeth of which rack-bar engage with the teeth of a pinion B also loose upon the shaft b- By the mechanism described,when the driving-wheel Serial No. 424,342. (No model.)
ousl'y revolved, while the pinion B will be oscillated or reciprocated first in one direction and then in the other. The pinion B is shown of smaller diameter than the pinion B, and, being driven by the crank 0, will be moved ata slower rate of speed than said pinion B.
Connected to the shaft 6 by a groove-andspline connection 19 and arranged between the pinions B B is a shifting-clutch member 0, provided with the usual groove, to be en gaged by the fork of the clutch-lever D. The movable clutch C is provided upon each side with a spring-pressed pin d, as clearly shown 'in Fig. 4, and each of the pinions B B is provided upon its inner face with a hole or recess d, adapted to be engaged by said spring-pressed pins (1. The clutch-lever D is pivoted to the frame, as at d and at its outer end is provided with a fork d E represents an endless cam-chain arranged so as to be embraced by the fork d of the clutch-lever, as shown in Figs. 1 and 2, and provided with projecting cams e, as shown in Fig. 6. This endless cam-chain E is supported upon suitable sprocket-wheels, one of which, F, is shown in the drawings, the other one, which is an idler, not being shown. The sprocket-wheel'F is secured to a shaft f, upon which shaft is also secured the ratchet-wheel .G for giving movement to the sprocket-wheel F and thus feeding the cam-chain. Upon the face of the driving-wheel B is a cam-groove g, as shown in Fig. 2. Engaging with this camgroove 9 is a roller or stud projecting from the lever h, which said lever is pivoted to the frame at h, andto the opposite end of said I and that when said clutch is engaged with the pinion B said shaft 1) will be oscillated or reciprocated back and forth let it be assumed that said clutch is in engagement with the pinion B and the mechanism in operation IOG with the shaft 1) in rotation. At each revolution of the gear-wheel or driving-wheel B the cam-chain E will, by means of the cam-groove g, the lever h, the pawl 7L2, and the ratchetwheel G and sprocket-wheel F, be fed along one link. \Vhen the driving-wheel B has revolved a sufficient number of times to bring the proper cam e on the cam-chain E to a position where said cam is about to engage the fork d on the lever D, the next feed of the cam-chain will cause said cam e to strike one arm of the fork of said lever, and as the cam is moved along it will serve to force or throw said lever D in a direction to disengage the clutch C from the pinion B and to engage the other pinion B The parts are so arranged that the hole d in the pinion B will not be at the proper position to be engaged by the projecting pin (1 upon the movable clutch memher at the instant, but the spring behind said pin will yield as the end of said pin comes in contact with the face of the pinion B thereby enabling the movable clutch to be moved close up to the face of said pinion and thus become disengaged from the pinion B, the springpressed pin being forced into and housed within the body of the clutch. When now in the movement of the pinion B under the action of its rack-bar the hole d in the face of said pinion is brought into the proper position, the pin d will be shot by its spring, so as to quickly and firmly engage said pinion and thus connect the movable clutch member therewith. The shaft 12 will then partake of the motion of the pinion B and be oscillated back and forth until another cam e on the opposite side of the cam-chain E is brought by the continuous feed of said cam-chain to a position where it will operate the clutch-lever D to move it in the opposite direction-21 e., in a direction to disengage the clutch C from the pinion B and to engage said clutch with the pinion B,which said pinion B will be engaged with the clutch O as soon as the hole d in the face of said pinion is brought to a position where it can be engaged by the appropriate spring-pressed pin d. When this engagement has taken place, the shaft 1) will be continuously rotated under the action of the pinion B until a cam on the cam-chain operates to again shift the clutch 0. Any desired number of cams e on the cam-chain may of course be employed, and by properly locating and arranging said cams the times for the shifting of the clutch may be varied and regulated as desired.
The mechanism above described may be used for various purposes and will be found particularly useful in connection with that class of knitting-machines which knit first around and around, as in knitting the leg and the foot of a stocking, and then backward and forward, as in knitting the heel and toe. In applying said mechanism to a knitting-machine of the class referred to four cams would be employed arranged alternately on opposite sides of the cam-chain. Thus the first cam would serve to shift the clutch from the pinion B to the pinion B at the conclusion of the leg of a stocking and preparatory to commencing the heel. The next cam would throw the clutch back again at the conclusion of the heel and preparatory to commencing the foot. The third cam would shift the clutch again at the end of the foot and preparatory to the commencement of the toe, and the fourth cam would shift the clutch back once more at the end of the toe and preparatory to commencing the leg of the next stocking.
It will be seen that the means for automatically shifting the clutch and thus for changing the shaft 1) from rotary to reciprocating motion, and vice versa, is entirely independent of said shaft, the shifting of the clutch being effected by a train of mechanism of which the shaft itself forms no part. By this arrangement the shaft may be oscillated back and forth any desired number of times without any shifting of the clutch, whereas in devices in which the shaft itself forms a part of the means or mechanism for shifting the clutch it is evident that the clutch must of necessity be shifted first in one direction and then in the other at every oscillation of the shaft.
What I claim as my invention, and desire to secure by Letters Patent, is-
1. The combination of ashaft, two pinions loosely mounted thereon, a movable clutch connected to said shaft so as to be revolved therewith, but so as to be capable of sliding thereon, said clutch being constructed to engage one or the other of said pinions, a lever for operating said movable clutch, a camchain for operating said clutch-lever in both directions, and means for feeding said camchain, substantially as described.
2. The combination of a shaft, two pinions loosely mounted thereon, means for actuating said pinions at different rates of speed, a movable clutch connected to said shaft so as to be revolved therewith, but so as to be capable of sliding thereon, and provided with spring-pressed pins adapted to engage corresponding recesses in said pinions, and means independent of said shaft for automatically shifting said movable clutch from one pinion to the other without stopping the machine, whereby said clutch may be disengaged from one of said pinions and immediately engaged with the other, while both pinions are in motion, but at different rates of speed, substantially as described.
3. The combination of a shaft, two pinions loosely mounted thereon, a movable clutch connected to said shaft so as to be revolved therewith, but so as to be capable of sliding thereon, and provided with spring-pressed pins adapted to engage corresponding recesses in said pinions, a lever for operating said movable clutch, a cam-chain for operating said clutch-lever in both directions, and means for feeding said cam-chain, substantially as'described. E
4. The combination of a shaft, two pinions loosely mounted thereon, a driving-Wheel or tooth-gear engaging directly with one of said pinions to revolve the same continuously, and also operating a rack-bar for oscillating the other of said pinions, a movable clutch connected to said shaft so as to be revolved therewith, but so as to be capable of sliding thereon, and constructed to engage one or the other of said pinions, a lever for operating said movable clutch, a cam-chain for operating said clutch-lever, and means operated by said driving-wheel for feeding said cam-chain, substantially as described.
5. The combination of a shaft, two pinions loosely mounted thereon, a movable clutch connected to said shaft so as to be revolved therewith, but so as to be capable of sliding thereon, said clutch being constructed to engage one or the other of said pinions, a lever engaging and operating said movable clutch,
a cam-chain directly engaging and serving to positively operate said lever in both directions, and means for feeding said cam-chain, substantially as described.
r 6. The combination of a shaft, two pinions loosely mounted thereon, means for actuating said pinions at different rates of speed, a movable clutch connected to said shaft so as to be revolved therewith, but so as to be capable of sliding thereon, said clutch being constructed to engage one or the other of said pinions while both are in motion, but at different rates of speed, a lever positively connected with said clutch for operating the same, and means for automatically and positively operating said lever in both directions, substantially as described.
7. The combination of a shaft, two pinions loosely mounted thereon, means for revolving one of said pinions and means for oscillating the other of said pinions at a difierent rate of speed, a movable clutch connected to said shaft so as to revolve therewith but so as to be capable of sliding thereon, and provided with spring-pressed pins adapted to engage corresponding recesses in said pinions, a lever for shifting said movable clutch, cams for shifting said lever in both directions and means for operating said cams, substantially as described.
' GEORGE E. FRINK.
Witnesses: i
W. H. THURsToN,
S. J. MURPHY.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050094808A1 (en) * 2003-10-31 2005-05-05 Pedlow Leo M.Jr. Dynamic composition of pre-encrypted video on demand content

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050094808A1 (en) * 2003-10-31 2005-05-05 Pedlow Leo M.Jr. Dynamic composition of pre-encrypted video on demand content

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